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The communities and functional profiles of virioplankton along a salinity gradient in a subtropical estuary

机译:亚热带河口中盐度梯度的virioplankton的社区和功能谱

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摘要

Viruses are the major drivers shaping microorganismal communities, and impact marine biogeochemical cycling. They are affected by various environmental parameters, such as salinity. Although the spatiotemporal distribution and dynamics of virioplankton have been extensively studied in saline environments, few detailed studies of community structure and function of viruses along salinity gradients have been conducted. Here, we used the 16S and 18S rRNA gene amplicon and metagenomic sequencing from a subtropical estuary (Pearl River Estuary, PRE; located in Shenzhen, Guangdong Province, China) to explore how viral community composition and function vary along a salinity gradient. Results showed that the detected viruses were mainly bacteriophages. The double-stranded DNA viruses were the most abundant (especially Siphoviridae, Myoviridae, Mimiviridae, Phycodnaviridae, and Podoviridae), followed by a small number of single-stranded DNA (Circoviridae) and RNA (Retroviridae) viruses. Viral biodiversity significantly declined and community structure varied greatly along the salinity gradient. The salinity, ammonium and dissolved oxygen were dominated factors influencing the community composition of viruses. Association network analysis showed that viruses had a negative effect on multiple host taxa (prokaryotic and eukaryotic species). Metagenomic data revealed that the main viral functional potential was involved in organic matter metabolism by carbohydrate-active enzymes (CAZymes). Deeper comparative functional analyses showed that viruses in the low-salinity environment had more carbohydrate-binding module and glycosidase hydrolases activities than those under high-salinity conditions. However, an opposite pattern was observed for carbohydrate esterases. These results suggest that virus-encoded CAZyme genes may alter the bacterial metabolism in estuaries. Overall, our results demonstrate that there is a spatial heterogeneity in the composition and function of virioplankton along a salinity gradient. This study enhances our understanding of viral distribution and their contribution to regulating carbon degradation throughout environments with varying salinities in subtropical estuaries.
机译:病毒是塑造微生物社区的主要驱动因素,并影响海洋生物地球化学循环。它们受各种环境参数的影响,如盐度。虽然VIRIOPLANKTON的时空分布和动态在盐水环境中已经过度研究,但是已经进行了少数对群落结构的详细研究和沿盐度梯度的病毒功能。在这里,我们使用来自亚热带河口(Pearl River Aze,Preven)的16S和18S rRNA基因扩增子和代理序列测序(Pre;位于中国广东省深圳),探讨病毒群体的成分和功能如何沿盐度梯度变化。结果表明,检测到的病毒主要是噬菌体。双链DNA病毒是最丰富的(特别是西梨糖尿病,Myoviridae,Mimiviridae,Phycodnaviridae和Podoviridae),其次是少量单链DNA(圆角)和RNA(逆转量)病毒。病毒生物多样性显着下降,社区结构沿盐度梯度大大变化。盐度,铵和溶解的氧气是影响病毒群落组成的主导因素。关联网络分析表明,病毒对多个宿主分类群(原核和真核生物物种)具有负面影响。 Metagenomic数据显示,通过碳水化合物 - 活性酶(辛糖)参与主要病毒功能潜力。更深的对比功能分析表明,低盐度环境中的病毒具有更多的碳水化合物结合模块和糖苷酶水解酶活性,而不是高盐度条件下的糖苷酶活性。然而,观察到碳水化合物酯酶的相反模式。这些结果表明,病毒编码的巨芝基因可能会改变河口中的细菌代谢。总体而言,我们的结果表明,沿盐度梯度的Virioplankton的组成和功能存在空间异质性。本研究提高了我们对病毒分布的理解及其在整个环境中调节碳退化的贡献,在亚热带河口中不同盐度。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|143499.1-143499.14|共14页
  • 作者单位

    Shenzhen Public Platform for Screening & Application of Marine Microbial Resources Shenzhen International Graduate School Tsinghua University Shenzhen 518055 PR China The School of Life Science and Engineering Lanzhou University of Technology Lanzhou Cansu Province PR China;

    Shenzhen Public Platform for Screening & Application of Marine Microbial Resources Shenzhen International Graduate School Tsinghua University Shenzhen 518055 PR China Institute for Ocean Engineering Tsinghua University Beijing 100084 PR China;

    Shenzhen Public Platform for Screening & Application of Marine Microbial Resources Shenzhen International Graduate School Tsinghua University Shenzhen 518055 PR China Institute for Ocean Engineering Tsinghua University Beijing 100084 PR China;

    Shenzhen Public Platform for Screening & Application of Marine Microbial Resources Shenzhen International Graduate School Tsinghua University Shenzhen 518055 PR China School of Environment Harbin Institute of Technology Harbin 150001 PR China;

    Shenzhen Public Platform for Screening & Application of Marine Microbial Resources Shenzhen International Graduate School Tsinghua University Shenzhen 518055 PR China Institute for Ocean Engineering Tsinghua University Beijing 100084 PR China;

    Shenzhen Public Platform for Screening & Application of Marine Microbial Resources Shenzhen International Graduate School Tsinghua University Shenzhen 518055 PR China Institute for Ocean Engineering Tsinghua University Beijing 100084 PR China;

    Shenzhen Public Platform for Screening & Application of Marine Microbial Resources Shenzhen International Graduate School Tsinghua University Shenzhen 518055 PR China Institute for Ocean Engineering Tsinghua University Beijing 100084 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Viral traits; Salinity; Carbon degradation; CAZyme activities; Pearl River estuary;

    机译:病毒性特征;盐度;碳退化;巨大的活动;珠江出口;

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